首页> 外文期刊>Data in Brief >Metabolomic and transcriptomic data on major metabolic/biosynthetic pathways in workers and soldiers of the termite Prorhinotermes simplex (Isoptera: Rhinotermitidae) and chemical synthesis of intermediates of defensive ( E)-nitropentadec-1-ene biosynthesis
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Metabolomic and transcriptomic data on major metabolic/biosynthetic pathways in workers and soldiers of the termite Prorhinotermes simplex (Isoptera: Rhinotermitidae) and chemical synthesis of intermediates of defensive ( E)-nitropentadec-1-ene biosynthesis

机译:白蚁 Prorhinotermes simplex (等翅目:Rhinotermitidae)的工人和士兵的主要代谢/生物合成途径的代谢组学和转录组学数据以及防御性中间体( E < / ce:italic>)-nitropentadec-1-ene生物合成

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Production of nitro compounds has only seldom been recorded in arthropods. The aliphatic nitroalkene ( E )-nitropentadec-1-ene ( NPD ), identified in soldiers of the termite genus Prorhinotermes , was the first case documented in insects in early seventies. Yet, the biosynthetic origin of NPD has long remained unknown. We previously proposed that N PD arises through the condensation of amino acids glycine and/or l -serine with tetradecanoic acid along a biosynthetic pathway analogous to the formation of sphingolipids. Here, we provide a metabolomics and transcriptomic data of the Prorhinotermes simplex termite workers and soldiers. Data are related to NPD biosynthesis in P. simplex soldiers. Original metabolomics data were deposited in MetaboLights metabolomics database and are become publicly available after publishing the original article. Additionally, chemical synthesis of biosynthetic intermediates of NPD in nonlabeled and stable labeled forms are reported. Data extend our poor knowledge of arthropod metabolome and transcriptome and would be useful for comparative study in termites or other arthropods. The data were used for de-replication of NPD biosynthesis and published separately (Jiro?ová et al., 2017) [1].
机译:很少在节肢动物中记录硝基化合物的产生。在白蚁属白蚁属(Prorhinotermes)的士兵中发现的脂族硝基链烯(E)-硝基戊烯-1-烯(NPD)是昆虫在70年代初的第一个病例。但是,NPD的生物合成起源长期以来仍然未知。我们先前提出,N PD是通过氨基酸甘氨酸和/或1-丝氨酸与十四烷酸沿着类似于鞘脂形成的生物合成途径的缩合而产生的。在这里,我们提供了白蚁白蚁工人和士兵的代谢组学和转录组学数据。数据与体育单兵中NPD的生物合成有关。原始代谢组学数据已保存在MetaboLights代谢组学数据库中,并在发表原始文章后公开可用。另外,报告了未标记和稳定标记形式的NPD生物合成中间体的化学合成。数据扩大了我们对节肢动物代谢组和转录组的了解,将有助于白蚁或其他节肢动物的比较研究。数据用于NPD生物合成的重复复制并单独发布(Jiro?ová等人,2017)[1]。

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